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An additional stage of hydrogen evolution , due to the LiBH4 thermal decomposition , is observed in the presence of excess LiBH4 . In the presence of excess LiOH , LiOH interacts with LiH , resulting in the evolution of all the hydrogen ...
An additional stage of hydrogen evolution , due to the LiBH4 thermal decomposition , is observed in the presence of excess LiBH4 . In the presence of excess LiOH , LiOH interacts with LiH , resulting in the evolution of all the hydrogen ...
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This process proceeded by a linear law to the point of a complete hydrogen release . If after the hydrolysis of the second portion of NaBH4 , hydrogen was evacuated from the reaction solution of the hydride phases ...
This process proceeded by a linear law to the point of a complete hydrogen release . If after the hydrolysis of the second portion of NaBH4 , hydrogen was evacuated from the reaction solution of the hydride phases ...
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INTRODUCTION Scandium dihydride is prepared by the direct inter- action of metallic scandium with hydrogen under a pres- sure of 105 Pa in the temperature range 350 - 450 ° C . The composition of the resulting hydride strongly depends ...
INTRODUCTION Scandium dihydride is prepared by the direct inter- action of metallic scandium with hydrogen under a pres- sure of 105 Pa in the temperature range 350 - 450 ° C . The composition of the resulting hydride strongly depends ...
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Interaction of Lithium Borohydride with Lithium Hydroxide | 6 |
Synthesis and Thermal Decomposition of the Aluminum Hydroxide Intercalation Compounds | 18 |
The Synthesis and Properties | 28 |
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absorption according acid addition analysis angles anion atoms band bismuth bond calculated cations Chem chemical Chemistry cm-¹ complexes components composition compounds concentration constants containing coordination Copyright corresponding crystals curves decomposition decrease dependence described determined diagram distances effect electron energy equation equilibrium experimental experiments fact formation given H₂O heating hydrogen increase indicates initial Inorganic intensity interaction ions Khim ligand liquidus measured melting metal method mixture mol/l molecules Moscow Neorg observed obtained occurs oxide oxygen parameters peritectic phase positions possible powder diffraction prepared present properties Publishing range ratio reaction REFERENCES region respectively Russian salts samples Sciences shows similar sodium solubility solutions space group spectra spectrum stability structure studied surface synthesis Table temperature thermal tion Translation values X-ray powder